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Method for operating a lithotripsy device and lithotripsy device operated by this method

A lithotripsy and analysis device technology, applied in the fields of application, medical science, surgery, etc., can solve the problems of non-recoverable, focus S deviating from the calibrated position, recoverable position deviation, etc., to avoid permanent damage and avoid irrecoverable The effect of deformation and avoiding irreversible damage

Inactive Publication Date: 2008-06-11
SIEMENS AG
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

However, since the force used to couple the shock wave source 2 to the patient 12 varies depending on the application, even this measure cannot always ensure that the focal point S coincides with the calibration position C
[0007] In addition to the restorable position shift of the focal point S explained above with the help of Fig. Deviate greatly from the calibration position C, and bring great risk to the patient

Method used

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  • Method for operating a lithotripsy device and lithotripsy device operated by this method
  • Method for operating a lithotripsy device and lithotripsy device operated by this method

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Embodiment Construction

[0021] 3 and 4 as above, the shock wave source 2 shown in FIG. 1 is installed on the C-shaped arm 6 through the support arm 4, and can surround the calibration position C of the focus of the shock wave source 2 (in this embodiment In the example, it is the concentric point of the C-shaped arm 6) to rotate. The calibration position C of the focal point of the shock wave source 2 is located at the image center of the X-ray imaging device 18, and the X-ray imaging device 18 is a C-arm X-ray equipment in this embodiment, wherein, the X-ray receiver 20 and the X-ray tube 22 Arranged on the X-ray C-arm 16 , the concentric point of the X-ray C-arm 16 coincides with the calibration position C of the focal point. The x-ray receiver 20 and the x-ray tube 22 can rotate together about this calibration position C.

[0022] The patient 12 to be treated is placed on the patient examination table 24 , and the shock wave source 2 is coupled with the body surface of the patient 12 through the ...

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Abstract

The invention relates to a method for operating a lithotripsy device, which method couples a shock wave source (2) to a patient (12) to be treated and controls at least one force (F) exerted on the shock wave source (2) during coupling. ) for detection and analysis, wherein the shock wave source is used to generate shock waves focused on a focus (S).

Description

technical field [0001] The invention relates to a method for operating a stone crushing device and a stone crushing device operated by the method. Background technique [0002] Lithotripsy is a treatment method that uses focused shock waves to break up stones in the patient's body without surgery. For this purpose, the shock wave source needs to be mechanically coupled to the patient, ie the shock wave source with a connecting bellows (filled with fluid) is placed on the surface of the body. In order to be able to introduce the shock wave into the patient's body with as little loss as possible, the connecting bellows must be in close contact with the body surface without gaps. [0003] To ensure this lossless acoustic coupling, it is known to adjust the force used to place or couple the shock wave source to the patient's body surface by means of the fluid pressure in the connecting bellows. However, depending on the specific anatomy of the patient and the specific penetrat...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A61B17/22
CPCA61B2017/2253A61B2019/465A61B17/2256A61B17/2251A61B17/2255A61B2090/065
Inventor 詹斯·费里雷纳·卡奇密特
Owner SIEMENS AG
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